Bio-based synthetic fiber blended antibacterial yarn device

By using the high-frequency vibration and extrusion design of the bio-based synthetic fiber blended antibacterial yarn device, the problem of yarn humidity affecting drying efficiency has been solved, achieving rapid drying and efficient production.

CN223688595UActive Publication Date: 2025-12-19NANJING HESU TIMES NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202520047895.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2025-12-19
Estimated Expiration
2035-01-09

AI Technical Summary

Technical Problem

Existing bio-based synthetic fiber blended yarns have high moisture content after washing, which leads to prolonged drying time and affects drying efficiency.

Method used

A device for manufacturing bio-based synthetic fiber blended antibacterial yarns is designed, comprising a vibrating component, a guiding component, and a squeezing ring. The device uses high-frequency vibration and squeezing to remove water from the yarn, thereby reducing the yarn's moisture content and improving drying efficiency.

Benefits of technology

High-frequency vibration and compression significantly reduce moisture in the yarn, shorten drying time, improve yarn drying efficiency, and enhance production quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a bio-based synthetic fiber blended antibacterial yarn device, which comprises a frame and two side plates, the two side plates are respectively and fixedly arranged at the bottoms of two opposite sides of the frame, the end parts of the opposite sides of the two side plates are connected with soft rings, a shaking piece is arranged between the two soft rings, and the shaking piece is connected with the frame. A guiding and conveying piece is further arranged between the two side plates. The utility model relates to the technical field of bio-based synthetic fiber blended yarn production. When the bio-based synthetic fiber blended antibacterial yarn device is used, yarn can vibrate at high frequency before bio-based synthetic fiber blended yarn is dried, so that water attached to the bio-based synthetic fiber blended yarn is thrown out, the water content of the bio-based synthetic fiber blended yarn is reduced, and the antibacterial effect of the bio-based synthetic fiber blended yarn is improved. The time required for subsequently drying the bio-based synthetic fiber blended yarn is shortened, and the drying efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of biological base synthetic fiber blending yarn production, especially to a kind of biological base synthetic fiber blending antibacterial yarn device. BACKGROUND

[0002] Biological base synthetic fiber, as its name implies, is a synthetic fiber converted by chemical or biological methods using biomass resources (such as plants, microorganisms, etc.) as raw materials. Compared with traditional petroleum-based synthetic fibers, biological base synthetic fibers have significant environmental friendliness, can reduce dependence on fossil resources, reduce greenhouse gas emissions, and promote the development of circular economy. In order to improve the antibacterial ability of biological base fiber, antibacterial yarn device is generally used for antibacterial treatment; through specific antibacterial agent spraying or soaking, antibacterial components are attached to the surface and inside of the yarn. These antibacterial components can destroy the structure of bacteria, inhibit their growth and reproduction, thereby achieving the antibacterial function of the yarn.

[0003] In the prior art, the antibacterial yarn production device disclosed in CN219199867U includes a drying rack. A plurality of support frames are fixedly connected inside the drying rack and are symmetrically arranged. A first connecting rod is installed between each pair of support frames. A rotating shaft is rotatably connected to the middle of the first connecting rod. A plurality of fixed rods are fixedly connected to the surface of the rotating shaft. A plurality of drums are fixedly connected to the end of the fixed rods. A plurality of fan blades are fixedly connected to the surface of the rotating shaft. A plurality of electric heating pipes are fixedly connected to the top of the inner side wall of the drying rack. When the electric heating pipes are used to dry the surface of the yarn, the air flow rate below the yarn is increased, thereby quickly drying the moist parts below the yarn that are not irradiated, making the drying of the yarn more sufficient, improving the drying effect of the yarn, and increasing the quality of the yarn production.

[0004] The gass is very strong to dry through electric heating pipe, and the air flow rate below the yarn is accelerated through fan blade, thereby improving the drying effect of the yarn and increasing the quality of antibacterial production of the yarn. However, after the yarn is washed, the humidity is high, so the time required for drying and air drying is lengthened, thereby easily affecting the efficiency of yarn drying. UTILITY MODEL CONTENT

[0005] In view of the deficiencies in the prior art, the purpose of the utility model is to provide a biological base synthetic fiber blending antibacterial yarn device to solve the technical problems mentioned in the background art.

[0006] The above technical purpose of the utility model is achieved through the following technical solutions:

[0007] The utility model provides a kind of bio-based synthetic fiber blended antibacterial yarn device, including frame and two side plates, two The side plate is fixedly installed in the frame opposite two edge bottom respectively, and the opposite side end of two The side plate is connected with soft ring, and the shaking element is arranged between two The side plate;

[0008] The shaking element includes a support cavity tube, a plurality of positioning rings, a rotor motor, a connecting rod, a flexible shaft, and a counterweight eccentric block. The plurality of positioning rings are linearly arranged and rotatably installed on the outer periphery of the support cavity tube. The outer periphery of each positioning ring is provided with a guide groove. The rotor motor is fixedly installed on one side of one of the side plates away from the support cavity tube. The output end of the rotor motor extends into the support cavity tube. The connecting rod is connected to the output end of the rotor motor. The connecting rod is rotatably connected to the support cavity tube. The flexible shaft is fixedly connected to the end of the connecting rod. The flexible shaft passes through the adjacent soft ring and is rotatably connected to the corresponding side plate. The counterweight eccentric block is fixedly installed on the outer periphery of the output shaft of the rotor motor. The corresponding side plate is provided with a clearance groove for avoiding the counterweight eccentric block.

[0009] In a preferred example, the utility model can be further configured as follows: the guide member includes a support shaft, the support shaft is rotatably installed between the two side plates, and the outer periphery of the support shaft is connected with two side frames. The two side frames are connected with a guide roller between the outer sides.

[0010] In a preferred example, the utility model can be further configured as follows: the outer periphery of the support shaft is connected with a plurality of fan blades, and the outer periphery of the guide roller is provided with a plurality of guide grooves.

[0011] In a preferred example, the utility model can be further configured as follows: an auxiliary shaft is fixedly connected between the two side plates, the auxiliary shaft is located below the support cavity tube, a plurality of extrusion rings are rotatably connected to the auxiliary shaft, and the positions of the extrusion rings correspond to the positions of the positioning rings.

[0012] In a preferred example, the utility model can be further configured as follows: the number of extrusion rings is the same as the number of positioning rings, the outer periphery of the extrusion ring is located in the guide groove, and the outer periphery of the extrusion ring is arc-shaped.

[0013] In a preferred example, the utility model can be further configured as follows: the flexible shaft and the soft ring are made of rubber or silicone material, and the extrusion ring is made of silicone or rubber material.

[0014] In summary, the utility model has at least one of the following beneficial technical effects:

[0015] 1. The bio-based synthetic fiber blended antibacterial yarn device can make the yarn vibrate at a high frequency before the bio-based synthetic fiber blended yarn is dried, so as to shake off the water attached to the bio-based synthetic fiber blended yarn, reduce the water content of the bio-based synthetic fiber blended yarn, shorten the time required for subsequent drying of the bio-based synthetic fiber blended yarn, and improve the drying efficiency.

[0016] 2. The bio-based synthetic fiber blended antibacterial yarn device is provided with a support shaft for rotating between the two side plates, and the bio-based synthetic fiber blended yarn passes under the positioning ring and adheres to the guide groove, and then passes over the guide roller, so as to tighten the bio-based synthetic fiber blended yarn, and the movement of the yarn can drive the guide roller to rotate, reducing the friction between the guide roller and the yarn.

[0017] 3. The bio-based synthetic fiber blended antibacterial yarn device is provided with an auxiliary shaft for supporting the extrusion ring, and the outer periphery of the extrusion ring extrudes the yarn passing through the positioning ring, so as to extrude the water in the yarn and shake off the water through vibration, further reducing the water content in the yarn to improve the efficiency of subsequent drying of the yarn.

[0018] 4. The bio-based synthetic fiber blended antibacterial yarn device is provided with the same number of extrusion rings as the number of positioning rings, so that each extrusion ring can extrude the corresponding yarn, and can simultaneously shake off water and dry multiple yarns, improving the drying efficiency of the yarn, and the outer periphery of the extrusion ring is arc-shaped, corresponding to the shape of the guide groove, so as to extrude the yarn. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed for the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0020] Figure 1 It is a whole structure schematic view of a bio-based synthetic fiber blended antibacterial yarn device.

[0021] Figure 2 It is a bio-based synthetic fiber blended antibacterial yarn device of the present application.

[0022] Figure 3 It is a bio-based synthetic fiber blended antibacterial yarn device of the present application.

[0023] Figure 4The utility model discloses a kind of biological base synthetic fiber blended antibacterial yarn device's avoidance groove structure schematic diagram.

[0024] In the drawing, 1, frame;2, side plate;3, soft ring;4, shaking part;5, guiding part;6, support cavity pipe;7, positioning ring;8, rotor motor;9, connecting rod;10, flexible shaft;11, counterweight eccentric block;12, guide groove;13, avoidance groove;14, support shaft;15, side frame;16, guiding roller;17, fan blade;18, guiding groove;19, auxiliary shaft;20, extrusion ring. DETAILED DESCRIPTION

[0025] The utility model makes further detailed description in combination with drawing.

[0026] Embodiment:

[0027] Refer to Figures 1-4 The utility model discloses a kind of biological base synthetic fiber blended antibacterial yarn device, including frame 1 and two side plates 2, two the side plate 2 is respectively fixedly installed in the opposite two side bottom of frame 1, two the side plate 2 relative side end portion is connected with soft ring 3, and shaking part 4 is provided between two soft rings 3, and guiding part 5 is also provided between two side plates 2;

[0028] The shaking part 4 includes support cavity pipe 6, positioning ring 7, rotor motor 8, connecting rod 9, flexible shaft 10 and counterweight eccentric block 11, the quantity of positioning ring 7 is several, and linear array distribution rotation is installed on the outer circumferential side of support cavity pipe 6, the outer circumferential side of positioning ring 7 is equipped with guide groove 12, the rotor motor 8 is fixedly installed in one of the side plate 2 away from the side of support cavity pipe 6, the output end of rotor motor 8 extends to support cavity pipe 6, the connecting rod 9 is connected with the output end of rotor motor 8, the connecting rod 9 is rotationally connected with support cavity pipe 6, the flexible shaft 10 is fixedly connected with the end of connecting rod 9, the flexible shaft 10 passes through the soft ring 3 close to and is rotationally connected with corresponding side plate 2, the counterweight eccentric block 11 is fixedly installed on the output shaft outer circumferential side of rotor motor 8, and the avoidance groove 13 for avoiding counterweight eccentric block 11 is opened on corresponding side plate 2.

[0029] In the embodiment, when using, the top side wall of frame 1 is provided with drying mechanism, biological base synthetic fiber blended yarn is bypassed from the lower side of positioning ring 7, then extends upwards and bypasses guiding part 5, and is taut, and also needs to make it in guide groove 12 on positioning ring 7 in the conveying process of biological base synthetic fiber blended yarn, so as to avoid the position deviation of biological base synthetic fiber blended yarn;

[0030] Subsequently, the rotor motor 8 is started, the rotor motor 8 will drive the counterweight eccentric block 11 to rotate in the avoidance slot 13, the centrifugal force generated by the rotation of the counterweight eccentric block 11, thereby generating a vibration force, and then generating vibration when driving the connecting rod 9 to rotate, the connecting rod 9 also drives the support cavity pipe 6 connected with it to vibrate when vibrating, the vibration of the support cavity pipe 6 also drives the vibration of the positioning ring 7, and then drives the bio-based synthetic fiber blended yarn to vibrate through the positioning ring 7, the high-frequency vibration of the bio-based synthetic fiber blended yarn can shake off part of the water attached to it, thereby greatly reducing the water content attached to the bio-based synthetic fiber blended yarn, thereby reducing the time required for drying when the bio-based synthetic fiber blended yarn is dried, and improving the drying and air-drying efficiency;

[0031] The soft ring 3 arranged therein has good toughness, so that the influence on the frame 1 when the support cavity pipe 6 vibrates can be reduced, so that the whole device vibrates, and the soft shaft 10 arranged additionally is the same as the soft ring 3, so that the vibration of the connecting rod 9 only drives the support cavity pipe 6 to vibrate, and the influence on the remaining components is reduced.

[0032] In a further preferred embodiment of the present application, as shown in Figure 3 The guide conveying member 5 comprises a support shaft 14 rotatably installed between the two side plates 2, and the outer periphery of the support shaft 14 is connected with two side frames 15, and the outer sides of the two side frames 15 are connected with a guide conveying roller 16.

[0033] In the embodiment, the support shaft 14 is arranged to rotate between the two side plates 2, and after the bio-based synthetic fiber blended yarn passes below the positioning ring 7 and adheres to the guide groove 12, the bio-based synthetic fiber blended yarn passes above the guide conveying roller 16, so that the bio-based synthetic fiber blended yarn can be tightened, and the movement of the yarn can drive the guide conveying roller 16 to rotate, thereby reducing the friction between the guide conveying roller 16 and the yarn.

[0034] In a further preferred embodiment of the present application, as shown in Figure 3 The outer periphery of the support shaft 14 is connected with a plurality of fan blades 17, and the outer periphery of the guide conveying roller 16 is provided with a plurality of guide conveying grooves 18.

[0035] In the embodiment, the fan blades 17 arranged can draw away the air below the yarn when the guide conveying roller 16 rotates, so as to improve the drying efficiency of the yarn, and the guide conveying grooves 18 arranged can make the yarn located in the guide conveying grooves 18 when the yarn passes through the guide conveying roller 16, so as to avoid the position deviation of the guide conveying roller 16.

[0036] In a further preferred embodiment of the present application, as shown in Figure 1As shown, the two side plates 2 are fixedly connected with an auxiliary shaft 19, the auxiliary shaft 19 is located below the support cavity pipe 6, a plurality of extrusion rings 20 are rotatably connected on the auxiliary shaft 19, and the positions of the extrusion rings 20 correspond to the positions of the positioning rings 7.

[0037] In the embodiment, the auxiliary shaft 19 is used for supporting the extrusion rings 20, and the outer circumferential side of the extrusion rings 20 extrudes the yarns passing through the positioning rings 7, so that the water in the yarns is extruded and shaken out through vibration, the water content in the yarns is further reduced, and the efficiency of subsequent drying of the yarns is improved.

[0038] In further preferable embodiments of the utility model, as shown in the drawings, Figure 1 The number of the extrusion rings 20 is the same as that of the positioning rings 7, the outer circumferential side of the extrusion rings 20 is located in the guide groove 12, and the outer circumferential side of the extrusion rings 20 is arc-shaped.

[0039] In the embodiment, the number of the extrusion rings 20 is the same as that of the positioning rings 7, so that each extrusion ring 20 can extrude the corresponding yarn, the water in the yarns can be shaken out and dried at the same time, the drying efficiency of the yarns is improved, the outer circumferential side of the extrusion rings 20 is arc-shaped, so that it can correspond to the shape of the guide groove 12, and the yarns can be extruded.

[0040] In further preferable embodiments of the utility model, as shown in the drawings, Figures 1-2 The flexible shaft 10 and the flexible ring 3 are made of rubber or silicone material, and the extrusion ring 20 is made of silicone or rubber material.

[0041] In the embodiment, the flexible shaft 10 and the flexible ring 3 are made of rubber or silicone material, so that they can be quickly reset through the flexibility of the flexible ring 3 and the flexible shaft 10 when the support cavity pipe 6 and the connecting rod 9 vibrate, the influence on the frame 1 is reduced, the whole frame 1 is prevented from following the vibration, and the use of the remaining components is affected, the extrusion ring 20 is made of silicone or rubber material, so that it has flexibility, and the yarns are prevented from being extruded and damaged due to the too hard material.

[0042] The embodiments of the specific embodiment are preferable embodiments of the utility model, and do not limit the protection scope of the utility model, so that: equivalent changes made according to the structure, shape and principle of the utility model should be covered in the protection scope of the utility model.

Claims

1. A bio-based synthetic fiber blended antibacterial yarn device, comprising a frame (1) and two side plates (2), two said side plates (2) are respectively fixedly installed on the opposite two side bottoms of the frame (1), characterized in that, Two opposite side ends of each of the side plates (2) are connected with soft rings (3), a shaking member (4) is arranged between the two soft rings (3), and a guide member (5) is further arranged between the two side plates (2); The shaking member (4) comprises a supporting cavity tube (6), positioning rings (7), a rotor motor (8), a connecting rod (9), a flexible shaft (10) and a counterweight eccentric block (11), a plurality of the positioning rings (7) are linearly arranged and rotatably installed on the outer circumferential side of the supporting cavity tube (6), a guide groove (12) is formed on the outer circumferential side of the positioning ring (7), the rotor motor (8) is fixedly installed on one side of one of the side plates (2) away from the supporting cavity tube (6), the output end of the rotor motor (8) extends into the supporting cavity tube (6), the connecting rod (9) is connected with the output end of the rotor motor (8), the connecting rod (9) is rotatably connected with the supporting cavity tube (6), the flexible shaft (10) is fixedly connected with the end of the connecting rod (9), the flexible shaft (10) penetrates through the adjacent soft ring (3) and is rotatably connected with the corresponding side plate (2), and the counterweight eccentric block (11) is fixedly installed on the outer circumferential side of the output shaft of the rotor motor (8), and the corresponding side plate (2) is provided with an avoiding groove (13) for avoiding the counterweight eccentric block (11).

2. A bio-based synthetic fiber blended antibacterial yarn device according to claim 1, characterized in that, The guide member (5) comprises a supporting shaft (14), the supporting shaft (14) is rotatably installed between the two side plates (2), and two side frames (15) are connected on the outer circumferential side of the supporting shaft, and a guide roller (16) is connected between the outer sides of the two side frames (15).

3. A bio-based synthetic fiber blended antibacterial yarn device according to claim 2, characterized in that, A plurality of fan blades (17) are connected on the outer circumferential side of the supporting shaft (14), and a plurality of guide grooves (18) are formed on the outer circumferential side of the guide roller (16).

4. A bio-based synthetic fiber blended antibacterial yarn device according to claim 3, characterized in that, An auxiliary shaft (19) is fixedly connected between the two side plates (2), the auxiliary shaft (19) is located below the supporting cavity tube (6), a plurality of extrusion rings (20) are rotatably connected on the auxiliary shaft (19), and the positions of the extrusion rings (20) correspond to the positions of the positioning rings (7).

5. A bio-based synthetic fiber blended antibacterial yarn device according to claim 4, characterized in that, The number of the extrusion rings (20) is the same as that of the positioning rings (7), the outer circumferential side of the extrusion ring (20) is located in the guide groove (12), and the outer circumferential side of the extrusion ring (20) is arc-shaped.

6. A bio-based synthetic fiber blended antibacterial yarn device according to claim 5, characterized in that, The flexible shaft (10) and the soft ring (3) are made of rubber or silica gel material, and the extrusion ring (20) is made of silica gel or rubber material.

Citation Information

Patent Citations

  • Antibacterial yarn production device

    CN219199867U